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Peptides Containing meso ‐Oxa‐Diaminopimelic Acid as Substrates for the Cell‐Shape‐Determining Proteases Csd6 and Pgp2

Authors :
Chang Sheng-Huei Lin
Arvind Soni
Michael E. P. Murphy
Martin E. Tanner
Source :
ChemBioChem. 20:1591-1598
Publication Year :
2019
Publisher :
Wiley, 2019.

Abstract

The enzymes Csd6 and Pgp2 are peptidoglycan (PG) proteases found in the pathogenic bacteria Helicobacter pylori and Campylobacter jejuni, respectively. These enzymes are involved in the trimming of non-crosslinked PG sidechains and catalyze the cleavage of the bond between meso-diaminopimelic acid (meso-Dap) and d-alanine, thus converting a PG tetrapeptide into a PG tripeptide. They are known to be cell-shape-determining enzymes, because deletion of the corresponding genes results in mutant strains that have lost the normal helical phenotype and instead possess a straight-rod morphology. In this work, we report two approaches directed towards the synthesis of the tripeptide substrate Ac-iso-d-Glu-meso-oxa-Dap-d-Ala, which serves as a mimic of the terminus of an non-crosslinked PG tetrapeptide substrate. The isosteric analogue meso-oxa-Dap was utilized in place of meso-Dap to simplify the synthetic procedure. The more efficient synthesis involved ring opening of a peptide-embedded aziridine by a serine-based nucleophile. A branched tetrapeptide was also prepared as a mimic of the terminus of a crosslinked PG tetrapeptide. We used MS analysis to demonstrate that the tripeptide serves as a substrate for both Csd6 and Pgp2 and that the branched tetrapeptide serves as a substrate for Pgp2, albeit at a significantly slower rate.

Details

ISSN :
14397633 and 14394227
Volume :
20
Database :
OpenAIRE
Journal :
ChemBioChem
Accession number :
edsair.doi.dedup.....84be00b0c1f9f885610ad62a324f5c56